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Erschienen in: Clean Technologies and Environmental Policy 4/2023

08.12.2022 | Original Paper

Modeling and optimization of the pyrolysis oil production process from polypropylene for the production of aviation kerosene

verfasst von: Heraclito Alexandre dos Santos, Igor José Boggione Santos, Cristiane Medina Finzi Quintão, Vagner Fernandes Knupp, Renata Carolina Zanetti Lofrano, Eliane Cristina de Oliveira, Gisella Lamas Samanamud, Mateus de Souza Amaral, Alexandre Boscaro França, Mariana Arruda Pereira, Matheus Teixeira Araújo Silva, Carla Cristina Almeida Loures, Mozart Dos Santos Carneiro, Jéssica Amaral Pereira Ponciano, Luzia Lima Rezende Naves, Fabiano Luiz Naves

Erschienen in: Clean Technologies and Environmental Policy | Ausgabe 4/2023

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Abstract

One of the greatest challenges in the world is in the final disposal of plastics in order to reduce the effect of its polluting potential. Thus, the application of pyrolysis processes in generating products of interest such as fuel oils can be part of the solution. In addition to reducing greenhouse gas emissions to the atmosphere, oil can enter the supply chain after the cracking process in petrochemical industries. In this context, this work used statistical modeling of the response surface linked to the normal boundary intersection algorithm, aiming at a higher yield of oil production and major selectivity of recycled polypropylene pyrolysis. From the analysis of the mechanisms proposed in the literature with the modeling and optimization in this work, it was possible, from a kaolin mass of 9.12 g and a heating ramp of 19.37 °C/min, to obtain higher percentages of aviation kerosene as well as a satisfactory performance.

Graphical abstract

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Literatur
Zurück zum Zitat Das I, Dennis J (1996) Normal-boundary intersaction: an alternative method for generating pareto optimal points in multicriteria optimization problems. ICASE Repo, Hampton Das I, Dennis J (1996) Normal-boundary intersaction: an alternative method for generating pareto optimal points in multicriteria optimization problems. ICASE Repo, Hampton
Zurück zum Zitat Kruse TM, Wong H, Broadbelt LJ (2003) Mechanistic modeling of polymer pyrolysis: polypropylene. pp. 9594–9607 Kruse TM, Wong H, Broadbelt LJ (2003) Mechanistic modeling of polymer pyrolysis: polypropylene. pp. 9594–9607
Zurück zum Zitat Myers RH, Montgomery DC, Anderson-Cook CM (2013) Response surface methodoly: process and product optimization using designed experiments Myers RH, Montgomery DC, Anderson-Cook CM (2013) Response surface methodoly: process and product optimization using designed experiments
Zurück zum Zitat Naves FL (2019) Normal boundary intersection applied to controllers in environmental controls. In: Rinken T (ed) Environmental biosensors Naves FL (2019) Normal boundary intersection applied to controllers in environmental controls. In: Rinken T (ed) Environmental biosensors
Metadaten
Titel
Modeling and optimization of the pyrolysis oil production process from polypropylene for the production of aviation kerosene
verfasst von
Heraclito Alexandre dos Santos
Igor José Boggione Santos
Cristiane Medina Finzi Quintão
Vagner Fernandes Knupp
Renata Carolina Zanetti Lofrano
Eliane Cristina de Oliveira
Gisella Lamas Samanamud
Mateus de Souza Amaral
Alexandre Boscaro França
Mariana Arruda Pereira
Matheus Teixeira Araújo Silva
Carla Cristina Almeida Loures
Mozart Dos Santos Carneiro
Jéssica Amaral Pereira Ponciano
Luzia Lima Rezende Naves
Fabiano Luiz Naves
Publikationsdatum
08.12.2022
Verlag
Springer Berlin Heidelberg
Erschienen in
Clean Technologies and Environmental Policy / Ausgabe 4/2023
Print ISSN: 1618-954X
Elektronische ISSN: 1618-9558
DOI
https://doi.org/10.1007/s10098-022-02450-7

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